The sprinkler system is used for watering the garden as given figure below. Working fluid enters the system at 9,26 liters/s. Calculate the required torque [N.m] holding the system as stationary for 0=30°. (NOTE: Take p-1000 kg/m) Nozzle exit area normal to relative velocity = 18 mm r= 0.5m
The sprinkler system is used for watering the garden as given figure below. Working fluid enters the system at 9,26 liters/s. Calculate the required torque [N.m] holding the system as stationary for 0=30°. (NOTE: Take p-1000 kg/m) Nozzle exit area normal to relative velocity = 18 mm r= 0.5m
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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The sprinkler system is used for watering the garden as given figure below Working fluid enters the system at
9,26 liters/s. Calculate the required torque [N.m holding the system as stationary for 0-30°. (NOTE: Take
P1000 kg/m)
![The sprinkler system is used for watering the garden as given figure below. Working fluid enters the system at
9,26 liters/s. Calculate the required torque [N.m] holding the system as stationary for 0=30°. (NOTE: Take
p=1000 kg/m)
Nozzle exit area normal to
relative velocity = 18 mm
r= 0.5m
Yanıt](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffe22b4ca-f225-45ba-b9b7-84aa23a58a31%2Fdf640a4f-2838-4335-943d-1ba552daebd4%2Fbspbt4_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The sprinkler system is used for watering the garden as given figure below. Working fluid enters the system at
9,26 liters/s. Calculate the required torque [N.m] holding the system as stationary for 0=30°. (NOTE: Take
p=1000 kg/m)
Nozzle exit area normal to
relative velocity = 18 mm
r= 0.5m
Yanıt
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